267
Photoinduced Generation of Hydroxyl Radical in Natural Waters
Murov SL, Carmichael I, Hug GL (1993) Handbook of photochemistry, 2nd edn. Marcel Dekker,
New York, pp 299–305
Nakatani N, Miyake T, Chiwa M, Hashimoto M, Arakaki T, Sakugawa H (2001) Photochemical
formation of OH radicals in dew formed on the pine needles at Mt Gokurakuji. Water Air
Soil Pollut 130:397–402
Nakatani N, Hashimoto N, Sakugawa H (2004) An evaluation of hydroxyl radical formation in
river water and the potential for photodegradation of bisphenol A. In: Hill RJ, Leventhal J,
Aizenshtat Z, Baedecker MJ, Claypool G, Eganhouse R, Goldhaber M, Peters K (eds) The
geochemical society special publication series 9, Geochemical investigations in earth and
space science: a tribute to Isaac R Kaplan. Elsevier, Amsterdam, pp 233–242
Nakatani N, Ueda M, Shindo H, Takeda K, Sakugawa H (2007) Contribution of the photo-Fenton reaction to hydroxyl radical formation rates in river and rain water samples. Anal Sci
23:1137–1142
Neta P, Huie RE, Ross AB (1988) Rate constants for reactions of inorganic radicals in aqueous
solution. J Phys Chem Ref Data 17:1027–1284
Nogueira RP, Guimaraes JR (2000) Photodegradation of dichloroacetic acid and 2,4-dichlorophenol by ferrioxalate/H 2 O 2 system. Water Res 34:895–901
Oda T, Akaike T, Sato K, Ishimatsu A, Takeshita S, Muramatsu T, Maeda H (1992) Hydroxyl
radical generation by red tide algae. Arch Biochem Biophys 294:38–43
Ollis DF, Pellizetti E, Serpone N (1991) Photocatalytic destruction of water contaminants.
Environ Sci Technol 25:1522–1529
Osburn CL, O’Sullivan DW, Boyd TJ (2009) Increases in the longwave photobleaching of
chromophoric dissolved organic matter in coastal waters. Limnol Oceanogr 54:145–159
Page SE, Arnold WA, McNeill K (2011) Assessing the contribution of free hydroxyl radical in organic matter-sensitized photohydroxylation reactions. Environ Sci Technol
45:2818–2825
Paradies G, Petrosillo G, Pistolese M, Ruggiero FM (2000) The effect of reactive oxygen species generated from the mitochondrial electron transport chain on the cytochrome C oxidase
activity and on the cardilipin content in bovine heart submitochondrial particles. FEBS Lett
466:323–326
Petasne RG, Zika RG (1987) Fate of superoxide in coastal sea water. Nature 325:516–518
Pham AN, Waite TD (2008) Oxygenation of Fe(II) in natural waters revisited: Kinetic modeling approaches, rate constant estimation and the importance of various reaction pathways.
Geochim Cosmochim Acta 72:3616–3630
Pignatello JJ (1992) Dark and photoassisted Fe 3+ -catalyzed degradation of chlorophenoxy herbicides by hydrogen peroxide. Environ Sci Technol 26:944–951
Pignatello JJ, Oliveros E, MacKay A (2006) Advanced oxidation processes for organic contaminant destruction based on the Fenton reaction and related chemistry. Crit Rev Environ Sci
Technol 36:1–84
Pleskov YV, Gurevich YY (1986) Semiconductor photoelectron chemistry. Consultants Bureau,
New York, p 29
Po HN, Sutin N (1968) The stability constant of the monochloro complex of iron (II). Inorg
Chem 7:621–624
Pochon A, Vaughan PP, Gan DQ, Vath P, Blough NV, Falvey DE (2002) Photochemical oxidation of water by 2-methyl-1,4-benzoquinone: evidence against the formation of free hydroxyl
radical. J Phys Chem A 106:2889–2894
Pozdnyakov IP, Glebov EM, Plyusnin VF, Grivin VP, Ivanov YV, Vorobyev DY, Bazhin NM
(2000) Hydroxyl radical formation upon photolysis of the Fe(OH) 2+ complex in aqueous
solution. Mendeleev Commun 10:185–186
Prousek J (1996) Advanced oxidation processes for water treatment photochemical processes.
Chem Listy 90:307–315
Pullin MJ, Bertilsson S, Goldstone JV, Voelker BM (2004) Effects of sunlight and hydroxyl radical on dissolved organic matter: bacterial growth efficiency and production of carboxylic
acids and other substrates. Limnol Oceanogr 49:2011–2022
Photoinduced Generation of Hydroxyl Radical in Natural Waters
Murov SL, Carmichael I, Hug GL (1993) Handbook of photochemistry, 2nd edn. Marcel Dekker,
New York, pp 299–305
Nakatani N, Miyake T, Chiwa M, Hashimoto M, Arakaki T, Sakugawa H (2001) Photochemical
formation of OH radicals in dew formed on the pine needles at Mt Gokurakuji. Water Air
Soil Pollut 130:397–402
Nakatani N, Hashimoto N, Sakugawa H (2004) An evaluation of hydroxyl radical formation in
river water and the potential for photodegradation of bisphenol A. In: Hill RJ, Leventhal J,
Aizenshtat Z, Baedecker MJ, Claypool G, Eganhouse R, Goldhaber M, Peters K (eds) The
geochemical society special publication series 9, Geochemical investigations in earth and
space science: a tribute to Isaac R Kaplan. Elsevier, Amsterdam, pp 233–242
Nakatani N, Ueda M, Shindo H, Takeda K, Sakugawa H (2007) Contribution of the photo-Fenton reaction to hydroxyl radical formation rates in river and rain water samples. Anal Sci
23:1137–1142
Neta P, Huie RE, Ross AB (1988) Rate constants for reactions of inorganic radicals in aqueous
solution. J Phys Chem Ref Data 17:1027–1284
Nogueira RP, Guimaraes JR (2000) Photodegradation of dichloroacetic acid and 2,4-dichlorophenol by ferrioxalate/H 2 O 2 system. Water Res 34:895–901
Oda T, Akaike T, Sato K, Ishimatsu A, Takeshita S, Muramatsu T, Maeda H (1992) Hydroxyl
radical generation by red tide algae. Arch Biochem Biophys 294:38–43
Ollis DF, Pellizetti E, Serpone N (1991) Photocatalytic destruction of water contaminants.
Environ Sci Technol 25:1522–1529
Osburn CL, O’Sullivan DW, Boyd TJ (2009) Increases in the longwave photobleaching of
chromophoric dissolved organic matter in coastal waters. Limnol Oceanogr 54:145–159
Page SE, Arnold WA, McNeill K (2011) Assessing the contribution of free hydroxyl radical in organic matter-sensitized photohydroxylation reactions. Environ Sci Technol
45:2818–2825
Paradies G, Petrosillo G, Pistolese M, Ruggiero FM (2000) The effect of reactive oxygen species generated from the mitochondrial electron transport chain on the cytochrome C oxidase
activity and on the cardilipin content in bovine heart submitochondrial particles. FEBS Lett
466:323–326
Petasne RG, Zika RG (1987) Fate of superoxide in coastal sea water. Nature 325:516–518
Pham AN, Waite TD (2008) Oxygenation of Fe(II) in natural waters revisited: Kinetic modeling approaches, rate constant estimation and the importance of various reaction pathways.
Geochim Cosmochim Acta 72:3616–3630
Pignatello JJ (1992) Dark and photoassisted Fe 3+ -catalyzed degradation of chlorophenoxy herbicides by hydrogen peroxide. Environ Sci Technol 26:944–951
Pignatello JJ, Oliveros E, MacKay A (2006) Advanced oxidation processes for organic contaminant destruction based on the Fenton reaction and related chemistry. Crit Rev Environ Sci
Technol 36:1–84
Pleskov YV, Gurevich YY (1986) Semiconductor photoelectron chemistry. Consultants Bureau,
New York, p 29
Po HN, Sutin N (1968) The stability constant of the monochloro complex of iron (II). Inorg
Chem 7:621–624
Pochon A, Vaughan PP, Gan DQ, Vath P, Blough NV, Falvey DE (2002) Photochemical oxidation of water by 2-methyl-1,4-benzoquinone: evidence against the formation of free hydroxyl
radical. J Phys Chem A 106:2889–2894
Pozdnyakov IP, Glebov EM, Plyusnin VF, Grivin VP, Ivanov YV, Vorobyev DY, Bazhin NM
(2000) Hydroxyl radical formation upon photolysis of the Fe(OH) 2+ complex in aqueous
solution. Mendeleev Commun 10:185–186
Prousek J (1996) Advanced oxidation processes for water treatment photochemical processes.
Chem Listy 90:307–315
Pullin MJ, Bertilsson S, Goldstone JV, Voelker BM (2004) Effects of sunlight and hydroxyl radical on dissolved organic matter: bacterial growth efficiency and production of carboxylic
acids and other substrates. Limnol Oceanogr 49:2011–2022
